The combinatorial model of nuclear level densities has now reached a level of accuracy comparable to that of the best global analytical expressions without suffering from the limits imposed by the statistical hypothesis on which the latter expressions rely. In particular, it provides naturally, non Gaussian spin distribution as well as non equipartition of parities which are known to have a significant impact on cross section predictions at low energies [1, 2]. Our first global model developed in Ref. 1 su ered from deficiencies, in particular in the way the collective effects -both vibrational and rotational - were treated. We have recently improved this treatment using simultaneously the single particle levels and collective properties pr...
A new model for calculating nuclear level densities is investigated. The single-nucleon spectra are ...
A combinatorial method to calculate total level densities from an arbitrary single-particle level s...
We review recent advances in the shell model Monte Carlo approach for the microscopic calculation of...
The combinatorial model of nuclear level densities has now reached a level of accuracy comparable to...
A microscopic method for calculating nuclear level density (NLD) is developed, based on the framewor...
Contributions to the nuclear level density from a deformed core and from surface vibrations are disc...
Nuclear level density calculations are performed using a model of fermions interacting via the pairi...
A microscopic nuclear level-density model is presented. The model is a completely combinatorial (mic...
New energy-, spin-and parity-dependent nuclear level densities based on the microscopic combinatoria...
In the independent-particle model nucleons move independently in a central potential. There is a wel...
The contribution of particle-particle (hole-hole) and of particle-hole ring diagrams to the nuclear ...
The knowledge of the level density as a function of excitation energy and nuclear spin is necessary ...
The knowledge of nuclear reaction rates is important for studying energy production and nucleosynthe...
A level density formula including low-energy rotational levels for nuclei with axially symmetric def...
The new definition of the energy dependence for the level density parameter including collective eff...
A new model for calculating nuclear level densities is investigated. The single-nucleon spectra are ...
A combinatorial method to calculate total level densities from an arbitrary single-particle level s...
We review recent advances in the shell model Monte Carlo approach for the microscopic calculation of...
The combinatorial model of nuclear level densities has now reached a level of accuracy comparable to...
A microscopic method for calculating nuclear level density (NLD) is developed, based on the framewor...
Contributions to the nuclear level density from a deformed core and from surface vibrations are disc...
Nuclear level density calculations are performed using a model of fermions interacting via the pairi...
A microscopic nuclear level-density model is presented. The model is a completely combinatorial (mic...
New energy-, spin-and parity-dependent nuclear level densities based on the microscopic combinatoria...
In the independent-particle model nucleons move independently in a central potential. There is a wel...
The contribution of particle-particle (hole-hole) and of particle-hole ring diagrams to the nuclear ...
The knowledge of the level density as a function of excitation energy and nuclear spin is necessary ...
The knowledge of nuclear reaction rates is important for studying energy production and nucleosynthe...
A level density formula including low-energy rotational levels for nuclei with axially symmetric def...
The new definition of the energy dependence for the level density parameter including collective eff...
A new model for calculating nuclear level densities is investigated. The single-nucleon spectra are ...
A combinatorial method to calculate total level densities from an arbitrary single-particle level s...
We review recent advances in the shell model Monte Carlo approach for the microscopic calculation of...